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Are more complex physiological models of forest ecosystems better choices for plot and regional predictions?,
, Environmental Modelling & Software, 01/2016, Volume 75, p.1 - 14, (2016)
Assessing Ecoregional-Scale Habitat Suitability Index Models for Priority Landbirds,
, Journal of Wildlife Management, 11/2009, Volume 73, p.1307 - 1315, (2009)
Assessing the sensitivity of avian species abundance to land cover and climate,
, Ecosphere, Jan-06-2016, Volume 7, Issue 6, p.e01359, (2016)
Bird response to future climate and forest management focused on mitigating climate change,
, Landscape Ecology, Nov-18-2016, p.1-18, (2016)
Challenges of forest landscape modeling—Simulating large landscapes and validating results,
, Landscape and Urban Planning, 4/2011, Volume 100, p.400 - 402, (2011)
Changes in forest biomass and tree species distribution under climate change in the northeastern United States,
, Landscape Ecology, Jan-08-2017, (2016)
Climate change and tree harvest interact to affect future tree species distribution changes,
, Journal of Ecology, 28-Jan-2019, (2019)
Developing a decision-support process for landscape conservation design,
, Gen. Tech. Rep. NRS-190. Newtown Square, PA: U.S. Department of Agriculture, Forest Service, Northern Research Station. 66 p., 07/2019, Newtown Square, PA, (2019)
Dynamic-landscape metapopulation models predict complex response of wildlife populations to climate and landscape change,
, Ecosphere, Jan-07-2017, Volume 8, Issue 7, p.e01890, (2017)
Effects of species biological traits and environmental heterogeneity on simulated tree species distribution shifts under climate change,
, Science of The Total Environment, Jan-09-2018, Volume 634, p.1214 - 1221, (2018)
The effects of temperature on nest predation by mammals, birds, and snakes,
, The Auk, Volume 130, p.784-790, (2013)
Evaluation of Habitat Suitability Models for Forest Passerines Using Demographic Data,
, Journal of Wildlife Management, 04/2010, Volume 74, p.411 - 422, (2010)
Extension of landscape-based population viability models to ecoregional scales for conservation planning,
, Biological Conservation, 5/2011, (2011)
Factors Affecting Post-Fledging Survival in Passerine Birds and the Value of Post-Fledging Studies to Conservation,
, The Journal of Wildlife Management, 01/2014, p.183-193, (2014)
Future Fire Probability Modeling with Climate Change Data and Physical Chemistry,
, Forest Science, 6-Oct-2014, Volume 60, Issue 5, p.862 - 870, (2014)
Future Fire Probability Modeling with Climate Change Data and Physical Chemistry,
, Society of American Foresters, Volume 60, (2014)
Future forest aboveground carbon dynamics in the central United States: the importance of forest demographic processes,
, Scientific Reports, Jun-02-2017, Volume 7, p.41821, (2017)
The importance of succession, harvest, and climate change in determining future forest composition in a temperate hardwood forest.,
, Ecosphere, 10-Aug-2015, Volume 6, Issue 12, p.1-18, (2015)
LANDIS PRO: a landscape model that predicts forest composition and structure changes at regional scales,
, Ecography, (2013)
Landscape- and regional-scale shifts in forest composition under climate change in the Central Hardwood Region of the United States,
, Landscape Ecology, Jan-01-2016, Volume 31, Issue 1, p.149 - 163, (2016)
Landscape-based population viability models demonstrate importance of strategic conservation planning for birds,
, Biological Conservation, Jan-09-2013, Volume 165, p.104 - 114, (2013)
A large-scale forest landscape model incorporating multi-scale processes and utilizing forest inventory data,
, Ecosphere, 09/2013, Volume 4, p.art106, (2013)
Long-term effects of different forest regeneration methods on mature forest birds,
, Forest Ecology and Management, Nov-2-2017, Volume 408, p.183 - 194, (2017)
Modeling the Effects of Harvest Alternatives on Mitigating Oak Decline in a Central Hardwood Forest Landscape,
, PLoS ONE, 6/2013, Volume 8, p.e66713, (2013)